Using HPC for Computational Fluid Dynamics

Using HPC for Computational Fluid Dynamics PDF Author: Shamoon Jamshed
Publisher: Academic Press
ISBN: 0128017511
Category : Science
Languages : en
Pages : 227

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Book Description
Using HPC for Computational Fluid Dynamics: A Guide to High Performance Computing for CFD Engineers offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics. Beginning with an introduction to HPC, including its history and basic terminology, the book moves on to consider how modern supercomputers can be used to solve common CFD challenges, including the resolution of high density grids and dealing with the large file sizes generated when using commercial codes. Written to help early career engineers and post-graduate students compete in the fast-paced computational field where knowledge of CFD alone is no longer sufficient, the text provides a one-stop resource for all the technical information readers will need for successful HPC computation. - Offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics - Tailored to the needs of engineers seeking to run CFD computations in a HPC environment

Using HPC for Computational Fluid Dynamics

Using HPC for Computational Fluid Dynamics PDF Author: Shamoon Jamshed
Publisher: Academic Press
ISBN: 0128017511
Category : Science
Languages : en
Pages : 227

Get Book Here

Book Description
Using HPC for Computational Fluid Dynamics: A Guide to High Performance Computing for CFD Engineers offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics. Beginning with an introduction to HPC, including its history and basic terminology, the book moves on to consider how modern supercomputers can be used to solve common CFD challenges, including the resolution of high density grids and dealing with the large file sizes generated when using commercial codes. Written to help early career engineers and post-graduate students compete in the fast-paced computational field where knowledge of CFD alone is no longer sufficient, the text provides a one-stop resource for all the technical information readers will need for successful HPC computation. - Offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics - Tailored to the needs of engineers seeking to run CFD computations in a HPC environment

Using HPC for Computational Fluid Dynamics

Using HPC for Computational Fluid Dynamics PDF Author: Shamoon Jamshed
Publisher:
ISBN:
Category : Customer relations
Languages : en
Pages : 226

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Book Description
Using HPC for Computational Fluid Dynamics: A Guide to High Performance Computing for CFD Engineers offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics. Beginning with an introduction to HPC, including its history and basic terminology, the book moves on to consider how modern supercomputers can be used to solve common CFD challenges, including the resolution of high density grids and dealing with the large file sizes generated when using commercial codes. Written to help early career engineers and post-graduate students compete in the fast-paced computational field where knowledge of CFD alone is no longer sufficient, the text provides a one-stop resource for all the technical information readers will need for successful HPC computation. Offers one of the first self-contained guides on the use of high performance computing for computational work in fluid dynamics Tailored to the needs of engineers seeking to run CFD computations in a HPC environment.

The Role of HPC in Computational Fluid Dynamics

The Role of HPC in Computational Fluid Dynamics PDF Author: S. Jamshed
Publisher: LAP Lambert Academic Publishing
ISBN: 9783848484942
Category :
Languages : en
Pages : 188

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Book Description
This work is my effort to produce a text which is helpful for becoming engineers, post graduate students and IT professionals. CFD is an emerging technology which is getting matured with the advent of supercomputers. Therefore, the knowledge of CFD alone is not sufficient to compete with the ongoing challenges in this field. Many engineers are found helpless when dealing with IT matters and they wait long enough for and IT expert to solve problem. The knowledge of HPC up to a primary extent is, therefore, mandatory for engineers. Look the other way round, when IT professionals are dealing with CFD problems. They need to know the basics of the most on-going commercial codes especially their installation on Linux-based clusters, enabling efficient job scheduling and trouble shoot bottlenecks in running a simulation without a helping hand of CFD engineers. One more important aspect is that the reader should not feel a need to browse the internet for some simple matters which are tried to be explained in this book in a much easier manner.

High Performance Computing in Fluid Dynamics

High Performance Computing in Fluid Dynamics PDF Author: P. Wesseling
Publisher: Springer Science & Business Media
ISBN: 9400902719
Category : Technology & Engineering
Languages : en
Pages : 285

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Book Description
Proceedings of the Summerschool on High Performance Computing in Fluid Dynamics, held at Delft University of Technology, the Netherlands, June 24-28 1996

Parallel Computational Fluid Dynamics

Parallel Computational Fluid Dynamics PDF Author: Rupak Biswas
Publisher: DEStech Publications, Inc
ISBN: 160595022X
Category : Computers
Languages : en
Pages : 703

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Book Description


High Performance Computing in Fluid Dynamics

High Performance Computing in Fluid Dynamics PDF Author: P. Wesseling
Publisher:
ISBN: 9789400902725
Category :
Languages : en
Pages : 292

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Book Description


Computational Fluid Dynamics

Computational Fluid Dynamics PDF Author: Adela Ionescu
Publisher: BoD – Books on Demand
ISBN: 9535137905
Category : Computers
Languages : en
Pages : 412

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Book Description
This book is the result of a careful selection of contributors in the field of CFD. It is divided into three sections according to the purpose and approaches used in the development of the contributions. The first section describes the "high-performance computing" (HPC) tools and their impact on CFD modeling. The second section is dedicated to "CFD models for local and large-scale industrial phenomena." Two types of approaches are basically contained here: one concerns the adaptation from global to local scale, - e.g., the applications of CFD to study the climate changes and the adaptations to local scale. The second approach, very challenging, is the multiscale analysis. The third section is devoted to "CFD in numerical modeling approach for experimental cases." Its chapters emphasize on the numerical approach of the mathematical models associated to few experimental (industrial) cases. Here, the impact and the importance of the mathematical modeling in CFD are focused on. It is expected that the collection of these chapters will enrich the state of the art in the CFD domain and its applications in a lot of fields. This collection proves that CFD is a highly interdisciplinary research area, which lies at the interface of physics, engineering, applied mathematics, and computer science.

Advances in Computational Fluid-Structure Interaction and Flow Simulation

Advances in Computational Fluid-Structure Interaction and Flow Simulation PDF Author: Yuri Bazilevs
Publisher: Birkhäuser
ISBN: 3319408275
Category : Mathematics
Languages : en
Pages : 487

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Book Description
This contributed volume celebrates the work of Tayfun E. Tezduyar on the occasion of his 60th birthday. The articles it contains were born out of the Advances in Computational Fluid-Structure Interaction and Flow Simulation (AFSI 2014) conference, also dedicated to Prof. Tezduyar and held at Waseda University in Tokyo, Japan on March 19-21, 2014. The contributing authors represent a group of international experts in the field who discuss recent trends and new directions in computational fluid dynamics (CFD) and fluid-structure interaction (FSI). Organized into seven distinct parts arranged by thematic topics, the papers included cover basic methods and applications of CFD, flows with moving boundaries and interfaces, phase-field modeling, computer science and high-performance computing (HPC) aspects of flow simulation, mathematical methods, biomedical applications, and FSI. Researchers, practitioners, and advanced graduate students working on CFD, FSI, and related topics will find this collection to be a definitive and valuable resource.

High Performance Computing, Computational Fluid Dynamics

High Performance Computing, Computational Fluid Dynamics PDF Author: Council for the Central Laboratory of the Research Councils
Publisher:
ISBN:
Category :
Languages : en
Pages : 260

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Book Description


Frontiers of Computational Fluid Dynamics 2002

Frontiers of Computational Fluid Dynamics 2002 PDF Author: Robert William MacCormack
Publisher: World Scientific
ISBN: 9789812810793
Category : Technology & Engineering
Languages : en
Pages : 528

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Book Description
This series of volumes on the OC Frontiers of Computational Fluid DynamicsOCO was introduced to honor contributors who have made a major impact on the field. The first volume was published in 1994 and was dedicated to Prof Antony Jameson; the second was published in 1998 and was dedicated to Prof Earl Murman. The volume is dedicated to Prof Robert MacCormack. The twenty-six chapters in the current volume have been written by leading researchers from academia, government laboratories, and industry. They present up-to-date descriptions of recent developments in techniques for numerical analysis of fluid flow problems, and applications of these techniques to important problems in industry, as well as the classic paper that introduced the OC MacCormack schemeOCO to the world. Contents: The Effect of Viscosity in Hypervelocity Impact Cratering (R W MacCormack); The MacCormack Method OCo Historical Perspective (C M Hung et al.); Numerical Solutions of Cauchy-Riemann Equations for Two and Three Dimensional Flows (M M Hafez & J Houseman); Extension of Efficient Low Dissipation High Order Schemes for 3-D Curvilinear Moving Grids (M Vinokur & H C Yee); Scalable Parallel Implicit Multigrid Solution of Unsteady Incompressible Flows (R Pankajakshan et al.); Lattice Boltzmann Simulation of Incompressible Flows (N Satofuka & M Ishikura); Numerical Simulation of MHD Effects on Hypersonic Flow of a Weakly Ionized Gas in an Inlet (R K Agarwal & P Deb); Development of 3D DRAGON Grid Method for Complex Geometry (M-S Liou & Y Zheng); Advances in Algorithms for Computing Aerodynamic Flows (D W Zingg et al.); Selected CFD Capabilities at DLR (W Kordulla); CFD Applications to Space Transportation Systems (K Fujii); Information Science OCo A New Frontier of CFD (K Oshima & Y Oshima); Integration of CFD into Aerodynamics Education (E M Murman & A Rizzi); and other papers. Readership: Researchers and graduate students in numerical and computational mathematics."